Unité Mixte de Recherche S949, Institut National de la Santé et de la Recherche Médicale-Université de Strasbourg, Etablissement Français du Sang-Alsace, Strasbourg, France.
Blood. 2014 Feb 20;123(8):1261-9. doi: 10.1182/blood-2013-06-508168. Epub 2013 Nov 15.
During proplatelet formation, a relatively homogeneous content of organelles is transported from the megakaryocyte (MK) to the nascent platelets along microtubule tracks. We found that platelets from Myh9(-/-) mice and a MYH9-RD patient were heterogeneous in their organelle content (granules and mitochondria). In addition, Myh9(-/-) MKs have an abnormal cytoplasmic clustering of organelles, suggesting that the platelet defect originates in the MKs. Myosin is not involved in the latest stage of organelle traffic along microtubular tracks in the proplatelet shafts as shown by confocal observations of proplatelet buds. By contrast, it is required for the earlier distribution of organelles within the large MK preplatelet fragments shed into the sinusoid circulation before terminal proplatelet remodeling. We show here that F-actin is abnormally clustered in the cytoplasm of Myh9(-/-) MKs and actin polymerization is impaired in platelets. Myosin IIA is required for normal granule motility and positioning within MKs, mechanisms that may be dependent on organelle traveling and tethering onto F-actin cytoskeleton tracks. Altogether, our results indicate that the distribution of organelles within platelets critically depends on a homogeneous organelle distribution within MKs and preplatelet fragments, which requires myosin IIA.
在血小板形成过程中,相对均匀的细胞器内容物沿着微管轨道从巨核细胞(MK)运输到新生血小板。我们发现 Myh9(-/-) 小鼠和 MYH9-RD 患者的血小板在细胞器含量(颗粒和线粒体)上存在异质性。此外,Myh9(-/-) MK 的细胞器在细胞质中异常聚集,表明血小板缺陷起源于 MK。肌球蛋白不参与微管轨道中细胞器运输的最后阶段,如对血小板突的共聚焦观察所示。相比之下,它是在终末血小板重塑之前,进入窦循环的大 MK 前血小板片段中细胞器早期分布所必需的。我们在这里表明,Myh9(-/-) MK 细胞质中的 F-肌动蛋白异常聚集,血小板中的肌动蛋白聚合受损。肌球蛋白 IIA 对于正常颗粒运动和在 MK 中的定位是必需的,这些机制可能依赖于细胞器运输和固定在 F-肌动蛋白细胞骨架轨道上。总之,我们的结果表明,血小板内细胞器的分布严重依赖于 MK 和前血小板片段内的均匀细胞器分布,这需要肌球蛋白 IIA。